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氧化锌纳米晶体对富电子钌联吡啶配合物发射的猝灭作用。

Zinc oxide nanocrystal quenching of emission from electron-rich ruthenium-bipyridine complexes.

作者信息

Hue Ryan J, Vatassery Rajan, Mann Kent R, Gladfelter Wayne L

机构信息

Department of Chemistry, University of Minnesota, 207 Pleasant St. SE, Minneapolis, MN 55455, USA.

出版信息

Dalton Trans. 2015 Mar 14;44(10):4630-9. doi: 10.1039/c4dt03272a.

Abstract

A series of heteroleptic bipyridine ruthenium complexes were prepared using known synthetic methods. Each compound incorporated one electron withdrawing 4,4'-dicarboxylic acid-2,2'-bipyridine and two bipyridines each of which had electron donating dialkylamine substituents in the 4 and 4' positions. The electronic absorption spectra exhibited absorptions that moved to lower energy as the donor ability of the amine substituent increased. Density functional calculations established that the HOMO was delocalized over the metal and two pyridine groups located trans to the pyridines of the dicarboxylic acid bipyridine. The LUMO was delocalized over the dicarboxylic acid bipyridine. Cyclic voltammetry of the deprotonated compounds exhibit one quasi-reversible oxidation and three reductions. Coupled with the emission data, the excited state reduction potentials were estimated to range from -0.93 to -1.03 V vs. NHE. Monodispersed 3.2 nm diameter nanocrystals (NCs) of zinc oxide were found to quench partially the excited state of the dyes via a static quenching electron transfer process involving the formation of a dyad of the complex and the NC. The magnitude of the partial quenching of complexed dyes was correlated to the distribution of band gaps for the NCs, which is an inverse function of diameter. Dyes attached to the NCs on the small end of the particle size distribution had electron transfer rates that were uncompetitive with radiative and nonradiative decay mechanisms.

摘要

采用已知的合成方法制备了一系列杂配双吡啶钌配合物。每种化合物都包含一个吸电子的4,4'-二羧酸-2,2'-联吡啶和两个双吡啶,每个双吡啶在4位和4'位都有供电子的二烷基胺取代基。电子吸收光谱显示,随着胺取代基供电子能力的增强,吸收峰向低能量方向移动。密度泛函计算表明,最高占据分子轨道(HOMO)离域于金属以及与二羧酸联吡啶的吡啶处于反位的两个吡啶基团上。最低未占据分子轨道(LUMO)离域于二羧酸联吡啶上。去质子化化合物的循环伏安法显示一个准可逆氧化峰和三个还原峰。结合发射数据,估计激发态还原电位相对于标准氢电极(NHE)在-0.93至-1.03 V范围内。发现直径为3.2 nm的单分散氧化锌纳米晶体(NCs)通过涉及形成配合物与NCs二元体的静态猝灭电子转移过程部分猝灭染料的激发态。配合物染料的部分猝灭程度与NCs的带隙分布相关,而带隙分布是直径的反函数。附着在粒径分布小端的NCs上的染料的电子转移速率与辐射和非辐射衰变机制相比不具有竞争力。

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